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Interfacial and bulk nanostructure of liquid polymer nanocomposites

机译:液态聚合物纳米复合材料的界面和本体纳米结构

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摘要

Liquid polymer nanocomposites (l-PNCs) have been prepared using silica nanoparticles with diameters of 15 nm (l-PNC-15) and 24 nm (l-PNC-24), and Jeffamine M-2070, an amine-terminated ethylene oxide/propylene oxide (PEO/PPO, ratio 31/10) copolymer. Jeffamine M-2070 was used as the host liquid in which the particles were suspended and was also grafted onto the particle surface to prevent aggregation. The grafting density of Jeffamine M-2070 on the particle surfaces was ~0.75 chains nm-2. When the total polymer content (surface layer + host) was greater than ~30 wt %, the PNC was a liquid, while at lower polymer volume fractions the PNC was solid. In this work, the bulk and surface structures of l-PNCs with ~70 wt % polymer and 30% silica are characterized and compared. Small-angle neutron scattering (SANS) was used to probe the bulk structure of the l-PNCs and revealed that the particles are well-dispersed with minor clustering in l-PNC-15 and substantial clustering in l-PNC-24. This is attributed to stronger van der Waals attractions between particles due to the larger particle size in l-PNC-24. Corresponding effects were revealed using tapping mode atomic force microscopy (TM-AFM) at the l-PNC-air interface; clustering was minimal on the surface of l-PNC-15 but significant for l-PNC-24 droplets. In regions of the l-PNC where the particles were well-dispersed, the spacing between particles is consistent with their volume fractions. This is the first time that the distribution of polymer and particles within l-PNCs has been imaged in situ.
机译:液态聚合物纳米复合材料(1-PNC)是使用直径为15 nm(1-PNC-15)和24 nm(1-PNC-24)的二氧化硅纳米粒子和Jeffamine M-2070(胺端基环氧乙烷/环氧丙烷(PEO / PPO,比率31/10)共聚物。 Jeffamine M-2070用作悬浮颗粒的基质液体,并且也被接枝到颗粒表面以防止聚集。 Jeffamine M-2070在颗粒表面的接枝密度为〜0.75链nm-2。当总聚合物含量(表面层+主体)大于〜30wt%时,PNC为液体,而在较低聚合物体积分数下,PNC为固体。在这项工作中,表征和比较了具有约70 wt%的聚合物和30%的二氧化硅的1-PNC的本体和表面结构。小角度中子散射(SANS)被用来探测1-PNC的整体结构,并揭示了粒子分布良好,在1-PNC-15中有较小的聚集,而在1-PNC-24中有大量的聚集。这归因于由于1-PNC-24中较大的颗粒尺寸,颗粒之间的范德华力更强。在l-PNC-空气界面使用轻敲模式原子力显微镜(TM-AFM)揭示了相应的效果;在1-PNC-15表面上的聚集最小,但是对于1-PNC-24液滴显着。在1-PNC的颗粒充分分散的区域中,颗粒之间的间隔与其体积分数一致。这是首次对1-PNCs中的聚合物和颗粒分布进行原位成像。

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